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Data from: Effects of landscape configuration and composition on phylogenetic diversity of trees in a highly fragmented tropical forest
负责人:
关键词:
habitat loss;phylogenetic structure;landscape configuration and composition;landscape structure;habitat fragmentation;edge effect
DOI:
doi:10.5061/dryad.fq988
摘要:
in landscapes within the highly fragmented Brazilian Atlantic forest. We sampled living trees with d.b.h. ? 4.8 cm in 0.1 ha plots within 28 fragment interiors
Data from: Timber harvest and tree size near nests explains variation in nest site occupancy but not productivity in northern goshawk
负责人:
关键词:
raptor;productivity;occupancy;mature forest;meta-analysis;Accipiter gentilis;Forest management
DOI:
doi:10.5061/dryad.70s5t
摘要:
in research methods, forest type, and forest management. In conclusion, our results suggest goshawk nest sites in populations of conservation concern, suc
Data from: Host range expansion of native insects to exotic trees increases with area of introduction and presence of congeneric native trees
负责人:
关键词:
Exotic trees;plantation forest;Host expansion;Damage;Native insects;phylogenetic relatedness
DOI:
doi:10.5061/dryad.tr61n
摘要:
1. Exotic tree species are widely used in forest plantations for their often high productivity and performance compared to native trees. Howeve
Data from: Mortality versus survival in drought?affected Aleppo pine forest depends on the extent of rock cover and soil stoniness
负责人:
关键词:
tree rings;Pinus halepensis;Rocky surface cover;soil moisture;semi-arid;Yakir Preisler;Stoniness;Yatir Forest
DOI:
doi:10.5061/dryad.92dj50c
摘要:
in the semi-arid pine forest of Yatir (Israel). The distribution of dead trees was, however, highly heterogeneous with parts of the forest showing >80
Data from: Living near the edge: being close to mature forest increases the rate of succession in beetle communities
负责人:
关键词:
Sogdini SEAGO Gen A;Macroplectus CHANDLER Type 1;within Aleocharinae TFIC sp 066;Acallistus longus;Percosoma carenoides;Geomela TFIC sp 01;Sogdini ANIC gen B;Rhabdotus reflexus;Palimbolus victoriae;Falagria TFIC sp 01;Pentagonica vittipenis;Zyras TFIC sp 01;Zyras TFIC sp 05;within Pselaphinae TFIC sp 06;Zyras TFIC sp 04;within Pselaphinae TFIC sp 05;Zyras TFIC sp 03;Zyras TFIC sp 02;Ciconissus gibbicollis;Poropterus alboscutellaris;Arsipoda bifrons;Microsilpha TFIC sp 03;Quedius subopaceous;Clambus bornemisszai;Quedius baldiensis;Exithius TFIC sp 01;Aridius nodifer;Colon TFIC sp 17;Arsipoda TFIC sp 04;Dryophthorus ECZ sp 02;Nargomorphus globulus;Sagola CHANDLER Tasmania 1;Myrmicholeva ligulata;Hobartius eucalypti;Austronemadus TFIC sp 03;Lissotes cancroides;Rybaxis parvidens;Telura vitticollis;Anotylus TFIC sp 03;Xynotropis TFIC sp 01;Anotylus TFIC sp 02;within Aleocharinae TFIC sp 161;within Aleocharinae TFIC sp 162;Phyllochlaenia TFIC sp 01;Homethes elegans;Sloaneana tasmaniae;Exithius capucinus;Anotylus TFIC sp 07;Quedius inaequalipennis;Cryptamorpha victoriae;Anotylus TFIC sp 05;Anotylus TFIC sp 04;Paropsisterna bimaculata;Quedius stenocephalus;Decilaus nigronotatus;within Pselaphinae TFIC sp 12;Philothermus tasmanicus;PselaphineTFIC sp 06;Rentoniinae TFIC sp 01;Eboo elongata;Seriocoderus TFIC sp 05;Osirius TFIC sp 01;Mecyclothorax ambiguus;Agonochula curtula;Cyphon TFIC sp 05;Quedius TFIC sp 07;within Ptillidae TFIC sp 21;Zeadolopus TFIC sp 01;Zeadolopus TFIC sp 02;within Ptillidae TFIC sp 16;Sepedophilus TFIC sp 07;Sepedophilus TFIC sp 01;Quedius TFIC sp 03;Tasmanityrus newtoni;Quedius TFIC sp 04;within Aleocharinae TFIC sp 156;within Cryptorhynchinae TFIC sp 20;within Aleocharinae TFIC sp 032;Hymaea succinfera;Spanioda carissima;Chylnus ater;Scopodes sigillatus;Nagomorphus globulus;Diemenoma commoda;within Ptillidae TFIC sp 01;Decilaus bryophilus;Cryptamorpha TFIC sp 01;Chichester CHANDLER Tasmania 1;within Ptillidae TFIC sp 07;within Ptillidae TFIC sp 06;within Pselaphine TFIC sp 20;Conoderus australasiae;Beetle abundance;Adelium abbreviatum;within Aleocharinae TFIC sp 004;Aulaxus CHANDLER Type 1;Catoposchema tasmaniae;Thalycrodes pulchrum;Heteronyx tasmanicus;Rybaxis variabilis;Brycopia coeloides;within Aleocharinae TFIC sp 127;within Aleocharinae TFIC sp 007;within Cryptorhynchinae TFIC sp 07;Austrorhysus TFIC sp 01;within Aleocharinae TFIC sp 014;within Aleocharinae TFIC sp 015;within Aleocharinae TFIC sp 132;Notonomus politulus;Paraplectus CHANDLER Tasmania 1;Microchaetes scoparius;Baeocera TFIC sp 02;Baeocera TFIC sp 01;Spaerothorax tasmani;Tyrogetus TFIC sp 01;Talayra TFIC sp 01;Leptopius TFIC sp 01;Ascara sublineata;Prostomus murinus;litter depth;Mandalotus blackburni;Quedius TFIC sp 10;Stichonotus piceus;Hyperomma bryophilum;within Aleocharinae TFIC sp 100;Pterocyrtus striatulus;Decilaus TFIC sp 22;Microchaetes hystricosus;Euconnus TFIC sp 07;Atheta TFIC sp 02;Lissotes subcaeruleus;Atheta TFIC sp 03;Atheta TFIC sp 04;Ischnosoma TFIC sp 01;Arsipoda variegata;Atheta TFIC sp 01;Horaemorphus TFIC sp 12;Ryzobius nr alphabetica;Horaemorphus TFIC sp 10;Hyperomma TFIC sp 05;within Eucnemidae TFIC sp 02;Enhypnon punctatus;Microsilpha ANIC Thayer sp 15;Philonthus TFIC sp 01;Heteronyx pubescens;Philonthus TFIC sp 06;Enhypnon tuberculatus;Decilaus lateralis;Thalycrodes cylindricum;Blepharhymenus sp nr apicornis;Anabaxis CHANDLER type 1;Mandalotus muscivorus;Nargiotes gordoni (ID uncertain);Soil variables;with Aleocharinae TFIC sp 163;Sagola TFIC sp 01;Sagola TFIC sp 02;Tetrabothrus claviger;Orchesia alphabetica;vegetation cover and diversity;Dapleuros tasmaniensis;Quedius duplopunctatus;Spaerothorax pubientris;Pachyporopterus satyrus;Leaf Area Index;Dinichus terreus;Aspidiphorus humeralis;Chameloscyphon huonensis;Orchesia TFIC sp 19;Heterothops TFIC sp 03;Lestignathus cursor;Colenisia TFIC sp 01;Enicmus priopterus;Trechistus terricola;Decilaus striatus;Orchesia TFIC sp 08;Orchesia TFIC sp 07;Choleva TFIC sp 02;Choleva TFIC sp 01;Lestignathus foveatus;Holopsis TFIC sp 01;Quediomimus TFIC sp 03;Orchesia TFIC sp 06;Orchesia TFIC sp 01;Roptoperus tasmaniensis;Heteromastix nigripes;Mandalotus arciferus;Pselaphaulax CHANDLER Tasmania 1;Decilaus TFIC sp 03;Decilaus TFIC sp 04;Decilaus TFIC sp 01;Decilaus TFIC sp 02;Phyllochlaenia villosa;Sagola rugicornis;Eublackburniella TFIC sp 01;Trechinae TFIC sp 08;Euplectops TFIC sp 01;Falagria TFIC sp 05;distance from mature forest;litter cover;Pseudoceneus solicitus;within Oxypodiini TFIC sp 06;within Oxypodiini TFIC sp 05;within Oxypodiini TFIC sp 04;within Oxypodiini TFIC sp 03;Exeiratus TFIC sp 07;Notocercyon TFIC sp 01;Pedilophorus griffithi;Exeiratus TFIC sp 04;Euplectops CHANDLER Tasmania 1;Coripera deplanata;Orchesia TFIC sp 23
DOI:
doi:10.5061/dryad.10c30
摘要:
secondary forests, species considered indicators of mature forest had re-colonised to abundance levels similar to those observed within adjacent mature forest stands
Data from: Global distribution patterns of mycoheterotrophy
负责人:
关键词:
cheaters;Ectomycorrhiza;forest type;global distribution;mycoheterotrophic plants;arbuscular mycorrhiza;Holocene
DOI:
doi:10.5061/dryad.3m9r7f7
摘要:
than forest type. Temperature and precipitation variables - but not edaphic factors - were the best predictors explaining the distribution patterns
Data from: Damage to artificial seedlings across a disturbed Afromontane forest landscape
负责人:
关键词:
seedling damage;plant debris;topographic variation;herbivores;thick understorey;forest regeneration
DOI:
doi:10.5061/dryad.tf80pd8
摘要:
ross a fragmented forest landscape in the Bwindi Impenetrable National Park, Uganda. A total of 848 artificial seedlings were established in 106 plots, ea
Data from: Carbon dynamics of mature and regrowth tropical forests derived from a pantropical database (TropForC-db)
负责人:
关键词:
secondary;biomass;intact;net ecosystem exchange;productivity;regeneration;production;Tropical Forest;carbon cycle;Holocene
DOI:
doi:10.5061/dryad.t516f
摘要:
-tropical forests, and knowledge gaps hamper efforts to quantify C budgets across the tropics and to model tropical forest- climate interactions. To advance
Data from: Echolocation and roosting ecology determine sensitivity of forest-dependent bats to coffee agriculture
负责人:
关键词:
landuse change;vegetation simplification.;forest bat;species vulnerability;trait-based analyses;Chiroptera
DOI:
doi:10.5061/dryad.gj34813
摘要:
, species richness and assemblage structures of bats between forests and coffee farms based on trapping data and evaluated the influence of vegetation complexity
Data from: Soil microclimate changes affect soil fungal communities in a Mediterranean pine forest
负责人:
关键词:
mycorrhizal.;Fungal community;drought;climate;ergosterol;fungal biomass
DOI:
doi:10.5061/dryad.s71c1tp
摘要:
mycelia may be negatively affected by increasing drought periods in Mediterranean forest ecosystems.

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